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Heavy metal sorption in biosorbents - Using spent grain from the brewing industry

机译:生物吸收剂中的重金属吸附 - 使用酿造工业的废粒

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The sorption properties of brewer's spent grain (BSG) were assessed in terms of its usefulness in removing heavy metals from solutions. The specific objectives of the investigation involved studying sorption equilibrium and kinetics, assessing the influence of other cations on sorption efficiency, and examining the possibility of bed regeneration. The studies were carried out in a static system, with a constant ratio of solution volume to biosorbent mass, and using a flow through system. The affinity of metal cations to BSG functional groups was established and increased in the series: Mn2+ V Zn2+ Ni2+ Cd2+ Cu2+ Pb2+. The BSG's sorption capacities (mmol g(-1)), determined using the Langmuir model, ranged from 0.020 (Mn) to 0.041 (Pb), with measurements of uncertainty not exceeding 20%. It was determined that a relatively high concentration of calcium cations (7.5 mmol L-1) versus copper cation concentration (0.03 mmol L-1) in solution, restricted the sorption efficiency by approximately 80%. The optimum pH of the solution used to carry out the sorption was determined to be within the range of 4.5-5.5. It was found that the functional groups of the BSG lose their efficacy over consecutive sorption and desorption cycles due to being blocked, or due to their chemical decomposition. This indicated that the proper interpretation of the results requires a statistical assessment of the measurements of uncertainty and of the uncertainty of determination of the sorption parameters. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在从解决方案中除去重金属的实用性方面评估了啤酒花花谷物(BSG)的吸附性能。研究涉及研究吸附均衡和动力学的具体目标,评估其他阳离子对吸附效率的影响,并检查床再生的可能性。这些研究在静态系统中进行,溶液体积与生物吸收质量的恒定比率,并使用流过系统。在系列中建立并增加了金属阳离子至BSG官能团的亲和力:Mn2 + V Zn2 +

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